Fixation of CO 2 along with bromopyridines on a silver electrode
Author(s) -
Yingtian Zhang,
Shuxian Yu,
Peipei Luo,
XU Shi-song,
Xianxi Zhang,
Huawei Zhou,
JiYuan Du,
Jie Yang,
Nana Xin,
Yu-Xia Kong,
Junhai Liu,
Baoli Chen,
Jiaxing Lu
Publication year - 2018
Publication title -
royal society open science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.84
H-Index - 51
ISSN - 2054-5703
DOI - 10.1098/rsos.180897
Subject(s) - electrolysis , electrochemistry , cyclic voltammetry , cathode , carbon fixation , electrode , electrolyte , materials science , inorganic chemistry , chemical engineering , chemistry , organic chemistry , carbon dioxide , engineering
Resulting from the drastic increase of atmospheric CO 2 concentration day by day, global warming has become a serious environmental issue nowadays. The fixation of CO 2 to obtain desirable, economically competitive chemicals has recently received considerable attention. This work investigates the fixation of CO 2 along with three bromopyridines via a facile electrochemical method using a silver cathode to synthesize picolinic acids, which are important industrial and fine chemicals. Cyclic voltammetry is employed to investigate the cyclic voltammetric behaviour of bromopyridines. In addition, systematic study is conducted to study the relationships between the picolinic acids' yield and the electrolysis conditions and intrinsic parameters. The results show that the target picolinic acids' yields are strongly dependent on various conditions such as solvent, supporting electrolyte, current density, cathode material, charge passed, temperature and the nature of the substrates. Moreover, in the studied electrode materials such as Ag, Ni, Ti, Pt and GC, electrolysis and cyclic voltammetry show that Ag has a good electrocatalytic effect on the reduction and carboxylation of bromopyridine. This facile electrochemical route for fixation of CO 2 provides an indispensable reference for the conversion and utilization of CO 2 under mild conditions.
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